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5,17-N,N'-Bis(4-amino-6-chloro-1,3,5-trazin-2-yl)diamino-11-phthalimido-25,26,27,28-tetrapropoxycalix[4]arene | 201288-61-1

中文名称
——
中文别名
——
英文名称
5,17-N,N'-Bis(4-amino-6-chloro-1,3,5-trazin-2-yl)diamino-11-phthalimido-25,26,27,28-tetrapropoxycalix[4]arene
英文别名
——
5,17-N,N'-Bis(4-amino-6-chloro-1,3,5-trazin-2-yl)diamino-11-phthalimido-25,26,27,28-tetrapropoxycalix[4]arene化学式
CAS
201288-61-1
化学式
C54H55Cl2N11O6
mdl
——
分子量
1025.01
InChiKey
IWJVTFYVKBZKIO-UHFFFAOYSA-N
BEILSTEIN
——
EINECS
——
  • 物化性质
  • 计算性质
  • ADMET
  • 安全信息
  • SDS
  • 制备方法与用途
  • 上下游信息
  • 反应信息
  • 文献信息
  • 表征谱图
  • 同类化合物
  • 相关功能分类
  • 相关结构分类

反应信息

  • 作为反应物:
    描述:
    5,17-N,N'-Bis(4-amino-6-chloro-1,3,5-trazin-2-yl)diamino-11-phthalimido-25,26,27,28-tetrapropoxycalix[4]arenepotassium carbonateN,N-二异丙基乙胺 作用下, 以 四氢呋喃乙醇乙酸乙酯 为溶剂, 反应 3.0h, 生成 11-Acetamido-5,17-N,N'-bis[4-amino-6-(butylamino)-1,3,5-trazin-2-yl]diamino-25,26,27,28-tetrapropoxycalix[4]arene
    参考文献:
    名称:
    Noncovalent Assembly of Functional Groups on Calix[4]Arene Molecular Boxes
    摘要:
    AbstractCalix[4]arenes diametrically substituted at the upper rim with two melamine units spontaneously form well‐defined box‐like assemblies in the presence of two equivalents of 5,5‐diethylbarbituric acid. These assemblies, consisting of nine different components, are held together by 36 hydrogen bonds and are stable in apolar solvents at concentrations of up to 10−4M. This paper reports the first X‐ray crystal structure, and the MALDI TOF mass spectra together with the complete 1H NMR spectroscopic characterization of these hydrogen‐bonded assemblies. The crystal structure clearly shows that the assemblies are stereogenic, as a result of the antiparallel orientation of the two rosette motifs. Furthermore, the synthesis of twelve new 1,3‐bis(melamine)calix[4]arenes carrying different numbers and types of functionalities at the upper rim is described. Detailed 1H NMR spectroscopic studies on the assembly behavior of these functionalized calix[4]arenes shows that 1) polar substituents (e.g. nitro, cyano) hardly affect the stability of the hydrogen‐bonded assembly; 2) hydrogen bond donating or accepting groups, like amino and acetamido, can disturb assembly of the boxes under certain conditions by destabilizing the calix[4]arene pinched cone conformation as a result of intramolecular hydrogen bond formation; and 3) sterically bulky groups (e.g. tBu) can significantly inhibit the formation of the hydrogen‐bonded assembly, but this effect very much depends on the exact positions of the groups.
    DOI:
    10.1002/chem.19970031115
  • 作为产物:
    参考文献:
    名称:
    Noncovalent Assembly of Functional Groups on Calix[4]Arene Molecular Boxes
    摘要:
    AbstractCalix[4]arenes diametrically substituted at the upper rim with two melamine units spontaneously form well‐defined box‐like assemblies in the presence of two equivalents of 5,5‐diethylbarbituric acid. These assemblies, consisting of nine different components, are held together by 36 hydrogen bonds and are stable in apolar solvents at concentrations of up to 10−4M. This paper reports the first X‐ray crystal structure, and the MALDI TOF mass spectra together with the complete 1H NMR spectroscopic characterization of these hydrogen‐bonded assemblies. The crystal structure clearly shows that the assemblies are stereogenic, as a result of the antiparallel orientation of the two rosette motifs. Furthermore, the synthesis of twelve new 1,3‐bis(melamine)calix[4]arenes carrying different numbers and types of functionalities at the upper rim is described. Detailed 1H NMR spectroscopic studies on the assembly behavior of these functionalized calix[4]arenes shows that 1) polar substituents (e.g. nitro, cyano) hardly affect the stability of the hydrogen‐bonded assembly; 2) hydrogen bond donating or accepting groups, like amino and acetamido, can disturb assembly of the boxes under certain conditions by destabilizing the calix[4]arene pinched cone conformation as a result of intramolecular hydrogen bond formation; and 3) sterically bulky groups (e.g. tBu) can significantly inhibit the formation of the hydrogen‐bonded assembly, but this effect very much depends on the exact positions of the groups.
    DOI:
    10.1002/chem.19970031115
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